H2C=CH-CH2–CH3 (g) + H2O(g) → CH3 CH(OH)CH2CH3 (g) a Use bond dissociation enthalpies to estimate the enthalpy change in this reaction. Bond AH (kJ/mol) H-O 463 C=C 610 H-C 413 C-C 346 C–O 358 Enthalpy change = kJ b Calculate the enthalpy change for this reaction from enthalpies of formation. Substance A;H (kJ/mol) CH3 CH(OH)CH2 CH3 (g) -293.1 H2O(g) -241.83 H2 C=CH-CH2-CH3 (g) -0.1300 Enthalpy change = kJ

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter5: Thermochemistry
Section: Chapter Questions
Problem 5.47QE
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2-Butanol can be made by the reaction of 1-butene and water:
H2 C=CH-CH,–CH3 (g) + H2O(g) → CH; CH(OH)CH2CH3 (g)
a Use bond dissociation enthalpies to estimate the enthalpy change in this reaction.
Bond
AH (kJ/mol)
H-O
463
C=C
610
H-C
413
C-C
346
358
Enthalpy change =
kJ
b Calculate the enthalpy change for this reaction from enthalpies of formation.
Substance
AƒH (kJ/mol)
CH3 CH(OH)CH2 CH3 (g)
-293.1
H2O(g)
-241.83
H2C=CH-CH2–CH3 (g)
-0.1300
Enthalpy change =
kJ
Transcribed Image Text:2-Butanol can be made by the reaction of 1-butene and water: H2 C=CH-CH,–CH3 (g) + H2O(g) → CH; CH(OH)CH2CH3 (g) a Use bond dissociation enthalpies to estimate the enthalpy change in this reaction. Bond AH (kJ/mol) H-O 463 C=C 610 H-C 413 C-C 346 358 Enthalpy change = kJ b Calculate the enthalpy change for this reaction from enthalpies of formation. Substance AƒH (kJ/mol) CH3 CH(OH)CH2 CH3 (g) -293.1 H2O(g) -241.83 H2C=CH-CH2–CH3 (g) -0.1300 Enthalpy change = kJ
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